| 1 |
HANSELL D, CARLSON C, REPETA D, et al.. Dissolved organic matter in the ocean: A controversy stimulates new insights. Oceanography, 2009, 22 (4): 202- 211.
|
| 2 |
MURPHY K R, TIMKO S A, GONSIOR M, et al.. Photochemistry illuminates ubiquitous organic matter fluorescence spectra. Environmental Science & Technology, 2018, 52 (19): 11243- 11250.
|
| 3 |
LI P H, HUR J.. Utilization of UV-Vis spectroscopy and related data analyses for dissolved organic matter (DOM) studies: A review. Critical Reviews in Environmental Science and Technology, 2017, 47 (3): 131- 154.
|
| 4 |
BAUER J E, CAI W J, RAYMOND P A, et al.. The changing carbon cycle of the coastal ocean. Nature, 2013, 504 (7478): 61- 70.
|
| 5 |
冉祥滨, 徐腾飞, 赵彬, 等.. 东海区域海洋学调查研究回顾. 海洋科学进展, 2024, 42 (1): 1- 20.
|
| 6 |
张明宇, 常鑫, 胡利民, 等.. 东海内陆架有机碳的源—汇过程及其沉积记录. 沉积学报, 2021, 39 (3): 593- 609.
|
| 7 |
BENNER R, STROM M.. A critical evaluation of the analytical blank associated with DOC measurements by high-temperature catalytic oxidation. Marine Chemistry, 1993, 41 (1/2/3): 153- 160.
|
| 8 |
BRICAUD A, MOREL A, PRIEUR L.. Absorption by dissolved organic matter of the sea (yellow substance) in the UV and visible domains. Limnology and Oceanography, 1981, 26 (1): 43- 53.
|
| 9 |
HELMS J R, STUBBINS A, RITCHIE J D, et al.. Absorption spectral slopes and slope ratios as indicators of molecular weight, source, and photobleaching of chromophoric dissolved organic matter. Limnology and Oceanography, 2008, 53 (3): 955- 969.
|
| 10 |
WEISHAAR J L, AIKEN G R, BERGAMASCHI B A, et al.. Evaluation of specific ultraviolet absorbance as an indicator of the chemical composition and reactivity of dissolved organic carbon. Environmental Science & Technology, 2003, 37 (20): 4702- 4708.
|
| 11 |
STEDMON C A, MARKAGER S, BRO R.. Tracing dissolved organic matter in aquatic environments using a new approach to fluorescence spectroscopy. Marine Chemistry, 2003, 82 (3/4): 239- 254.
|
| 12 |
MURPHY K R, STEDMON C A, GRAEBER D, et al.. Fluorescence spectroscopy and multi-way techniques. PARAFAC. Analytical Methods, 2013, 5 (23): 6557- 6566.
|
| 13 |
MURPHY K R, STEDMON C A, WENIG P, et al.. OpenFluor–an online spectral library of auto-fluorescence by organic compounds in the environment. Analytical Methods, 2014, 6 (3): 658- 661.
|
| 14 |
QI J F, YIN B S, ZHANG Q L, et al.. Seasonal variation of the Taiwan warm current water and its underlying mechanism. Chinese Journal of Oceanology and Limnology, 2017, 35 (5): 1045- 1060.
|
| 15 |
ZHANG Q L, LIU H W, QIN S S, et al.. The study on seasonal characteristics of water masses in the western East China Sea shelf area. Acta Oceanologica Sinica, 2014, 33 (11): 64- 74.
|
| 16 |
苏育嵩, 李凤岐, 马鹤来, 等.. 东海北部区域底层冷水团的形成及其季节变化. 青岛海洋大学学报, 1989, 19 (S1): 1- 14.
|
| 17 |
翁学传, 王从敏.. 台湾暖流水的研究. 海洋科学, 1985, 9 (1): 7- 10.
|
| 18 |
王翠, 郭晓峰, 方婧, 等.. 闽浙沿岸流扩展范围的季节特征及其对典型海湾的影响. 应用海洋学学报, 2018, 37 (1): 1- 8.
|
| 19 |
于非, 张志欣, 刁新源, 等.. 黄海冷水团演变过程及其与邻近水团关系的分析. 海洋学报, 2006, 28 (5): 26- 34.
|
| 20 |
齐继峰. 东海水团特征及黑潮与东海陆架水交换研究 [D]. 山东 青岛: 中国科学院研究生院(海洋研究所), 2014.
|
| 21 |
YUAN D L, QIAO F L, SU J.. Cross-shelf penetrating fronts off the southeast coast of China observed by MODIS. Geophysical Research Letters, 2005, 32 (19): L19603.
|
| 22 |
YUAN D L, LI Y, HE L, et al.. An observation of the three-dimensional structure of a cross-shelf penetrating front off the Changjiang mouth. Deep Sea Research Part II: Topical Studies in Oceanography, 2010, 57 (19/20): 1827- 1834.
|
| 23 |
GAO L, GAO Y Q, SONG S Z, et al.. Non-conservative behavior of dissolved organic carbon in the Changjiang (Yangtze River) Estuary and the adjacent East China Sea. Continental Shelf Research, 2020, 197, 104084.
|
| 24 |
李润, 陈洁南, 陈灏, 等.. 河口盐沼水体溶解态有机质的动态变化特征及降解转化机理——以上海崇明东滩盐沼湿地为例. 华东师范大学学报(自然科学版), 2025 (2): 55- 67.
|
| 25 |
HUNG J J, CHEN C H, GONG G C, et al.. Distributions, stoichiometric patterns and cross-shelf exports of dissolved organic matter in the East China Sea. Deep Sea Research Part Ⅱ: Topical Studies in Oceanography, 2003, 50 (6/7): 1127- 1145.
|
| 26 |
COBLE P G.. Characterization of marine and terrestrial DOM in seawater using excitation-emission matrix spectroscopy. Marine Chemistry, 1996, 51 (4): 325- 346.
|
| 27 |
MENENDEZ A, TZORTZIOU M.. Driving factors of colored dissolved organic matter dynamics across a complex urbanized estuary. Science of the Total Environment, 2024, 921, 171083.
|
| 28 |
DAINARD P G, GUÉGUEN C, YAMAMOTO-KAWAI M, et al.. Interannual variability in the absorption and fluorescence characteristics of dissolved organic matter in the Canada Basin polar mixed waters. Journal of Geophysical Research: Oceans, 2019, 124 (7): 5258- 5269.
|
| 29 |
ZHOU X Z, JOHNSTON S E, BOGARD M J.. Organic matter cycling in a model restored wetland receiving complex effluent. Biogeochemistry, 2023, 162 (2): 237- 255.
|
| 30 |
MURPHY K R, STEDMON C A, WAITE T D, et al.. Distinguishing between terrestrial and autochthonous organic matter sources in marine environments using fluorescence spectroscopy. Marine Chemistry, 2008, 108 (1/2): 40- 58.
|
| 31 |
KULKARNI H, MLADENOV N, DATTA S.. Effects of acidification on the optical properties of dissolved organic matter from high and low arsenic groundwater and surface water. Science of the Total Environment, 2019, 653, 1326- 1332.
|
| 32 |
CHEN S, DU Y X, DAS P, et al.. Agricultural land use changes stream dissolved organic matter via altering soil inputs to streams. Science of the Total Environment, 2021, 796, 148968.
|
| 33 |
朱晓敏, 黄清辉, 李建华.. 咸水藻水华期溶解有机质光谱特征变化的模拟. 中国环境科学, 2009, 29 (1): 68- 72.
|
| 34 |
侯树冉, 纪璇, 张婧.. 藻源有色溶解有机物的光学特性变化及一氧化碳的光生成——以中肋骨条藻为例. 中国环境科学, 2023, 43 (6): 3118- 3128.
|